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REPOWERING OF A RANKINE CYCLE POWER PLANT BY MEANS OF CONCENTRATING SOLAR COLLECTORS

机译:集中式太阳能集热器对RANK循环电厂的改造

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Repowering of an existing steam power plant by means of solar concentrating collectors is examined as a viable option to decrease CO_2 emissions and increase electric power production during daytime peak load energy demanding hours. In the proposed scheme, the regenerative bleeds from the steam turbine are partially intercepted while boiler feed-water is heated by means of parabolic solar trough concentrating collectors. It is considered that fossil boiler, steam turbine and condenser are the same of the original plant, without modifications. After choosing a steam cycle reproducing an existing power plant, the scheme of solar repowering is examined and the efficiency of conversion of the solar energy is optimized in relation to the characteristics of the solar collector. The paper shows that the modified scheme produces very little effects on the working conditions of the existing components, either at full load or partial load, and does not reduce the conversion efficiency of the fossil fuel. In comparison with solar thermal power plants with heat storage and only solar energy as thermal input, the proposed scheme is expected to have comparable efficiency but lower costs per kWh produced, as a consequence of the fact that there is no need for steam turbine, condenser, cooling tower and auxiliary boiler. Moreover it is expected that personnel and maintenance costs will be lower.
机译:现已研究了通过太阳能集热器为现有的蒸汽发电厂提供动力的可行方案,以减少白天高峰负荷能量需求小时内的CO_2排放并增加电力生产。在所提出的方案中,当通过抛物线太阳能槽式集热器加热锅炉给水时,部分拦截了来自汽轮机的再生放气。认为化石锅炉,蒸汽轮机和冷凝器与原始设备相同,未进行任何修改。在选择一个可再生现有电厂的蒸汽循环后,将检查太阳能重新供电的方案,并根据太阳能收集器的特性优化太阳能的转换效率。本文表明,改进的方案无论是在满负荷还是部分负荷下,都不会对现有组件的工作条件产生太大影响,并且不会降低化石燃料的转化效率。与具有储热功能且仅太阳能作为热输入的太阳能热电厂相比,由于不需要蒸汽轮机,冷凝器,因此拟议的方案有望具有可比的效率,但每千瓦时的成本较低,冷却塔和辅助锅炉。此外,预计人员和维护成本将降低。

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